Biomedical Engineering Reference
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[9] J. Boland, The best of both worlds—A novel approach to macromolecular STM studies, Surf. Sci. 602
(2008) 1-2.
[10] M. Bowker, E. Fourre, Direct interactions between metal nanoparticles and support: STM studies of Pd on
TiO 2 (110), Appl. Surf. Sci. 254 (2008) 4225-4229.
[11] A. Visikovskiy, M. Yoshimura, K. Ueda, Pt-induced structures on Si (110) studied by STM, Appl. Surf. Sci.
254 (23) (2008) 7626-7629.
[12] G. Binning, C. Quate, Ch. Gerber, Atomic force microscope, Phys. Rev. Lett. 12 (1986) 930.
[13] Q. Zhong, D. Inniss, K. Kjoller, V. Elings, Fractured polymer/silica fiber surface studied by tapping mode
atomic force microscopy, Surf. Sci. 290 (1993) 688-692.
[14] A. Ponche, M. Bigerelle, K. Anselme, Relative influence of surface topography and surface chemistry on
cell response to bone implant materials. Part 1: Physico-chemical effects, Proc. Inst. Mech. Eng. H. 224
(Part H) (2010) 1471-1486.
[15] C.C. Wang, Y.C. Hsu, M.C. Hsieh, S.P. Yang, F.C. Su, T.M. Lee, Effects of nano-surface properties on ini-
tial osteoblast adhesion and Ca/P adsorption ability for titanium alloys, Nanotechnology 19 (2008) 1-10.
[16] P. Michael Conn (Ed.), Techniques in Confocal Microscopy, Academic Press, (2010) ISBN: 0123846587
[17] M. Minsky, Patent US3013467 A, 19/12/1961.
[18] D.V. Patel, C.N. McGhee, Contemporary in vivo confocal microscopy of the living human cornea using white
light and laser scanning techniques: a major review, Clin. Experiment. Ophthalmol. 35 (1) (2007) 71-88.
[19] A. Hoffman, M. Goetz, M. Vieth., P.R. Galle, M.F. Neurath, R. Kiesslich, Confocal laser endomicroscopy:
technical status and current indications, Endoscopy 38 (12) (2006) 1275-1283.
[20] S. Astner, K. Swindells, S. Gonzalez, E. Stockfleth, J. Lademann, Confocal microscopy: innovative diag-
nostic tools for monitoring of noninvasive therapy in cutaneous malignancies, Drug Discov. Today 5 (2008)
e81-e91 DOI: 10.1016/j.ddmec.2008.04.002
[21] M. Fulwyler, Q. Hanley, C. Schnetter, I. Young, E. Jares-Erijman, D. Arndt-Jovin, et al., Selective photo-
reactions in a programmable array microscope (PAM): photoinitiated polymerization, photodecaging, and
photochromic conversion, Cytometry A 67A (2005) 68-75.
[22] S. Manara, F. Paolucci, B. Palazzo, M. Marcaccio, E. Foresti, G. Tosi, et al., Electrochemically-assisted
deposition of biomimetic hydroxyapatite-collagen coatings on titanium plate, Inorg. Chim. Acta. 361
(2008) 1634-1645.
[23] K. Wang, C. Russel, C. Liu, Preparation, mechanical properties and corrosion behaviors of oriented
Ca(PO 3 ) 2 glass-ceramics, Mater. Chem. Phys. 111 (2008) 106-113.
[24] C. O'Mahony, M. Hill, M. Brunet, R. Duane, A. Mathewson, Characterization of micromechanical struc-
tures using white-light interferometry, Meas. Sci. Technol. 14 (10) (2003) 1807-1814.
[25] I. Kassamakov, K. Hanhijärvi, I. Abbadi, J. Aaltonen, H. Ludvigsen, E. Hæggström, Scanning white-light
interferometry with a supercontinuum source, Optic. Lett. 34 (10) (2009) 1582-1584.
[26] R. Dai, T.B. Xie, S.P. Chang, A scanning white-light interferometric profilometer for smooth and rough sur-
face, J. Key Eng. Mater. 364-366 (2008) 364-370.
[27] J.M. Coupland, J. Lobera, Measurement of steep surfaces using white light interferometry, Int. J. Strain
Mech. 46 (1) (2010) 69-78.
[28] R.S. Sirohi, Optical Methods of Measurement: Wholefield Techniques, second ed., CRC Press ISBN:
1574446975
[29] D. Wang, J. Mao, B. Zhou, X.-F. Liao, S.-Q. Gong, Y. Liu, et al., A chimeric peptide that binds to titanium
and mediates MC3T3-E1 cell adhesion, Biotechnol. Lett. 33 (2011) 191-197.
[30] R.A. Delgado-Ruız, J.L. Calvo-Guirado, P. Moreno, J. Guardia, G. Gomez-Moreno, J.E. Mate-Sanchez, et
al., Femtosecond laser microstructuring of zirconia dental implants, J. Biomed. Mater. Res. B 96B (2011)
91-100.
[31] L. Hjalmarsson, J.I. Smedberg, A. Wennerberg, Material degradation in implant-retained cobalt-chrome and
titanium frameworks, J. Oral. Rehabil. 38 (2011) 61-71.
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